Concept: The excitation-dependent relaxation dynamics of charge carriers in anatase TiO2 nanorods (NRs) was investigated by femtosecond transient absorption spectroscopy. This technique is a widely known effective tool with unique capabilities for elucidating the electron-hole (e--h+) recombination dynamics of nanocrystals. Colloidal dispersions of such anisotropic nanocrystals were excited in the UV−vis range using three different pump wavelengths, i.e. above, close to, and below the direct band gap of anatase. We show that the ultrafast dynamics strongly depends on the excitation wavelength, and influences most of the processes contributing to the relaxation dynamics. Motivations and objectives: TiO2 nanocrystals are successfully exploit...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
© 2017 American Chemical Society. Understanding the nature of charge carriers in nanoscale titanium ...
Transition metal oxides are widely used as catalysts for industrial processes. Notably, TiO$_{2}$ is...
The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform w...
We report on femtosecond–nanosecond (fs–ns) studies of the triphenylamine organic dye (TPC1) interac...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Understanding the relationship between structural properties and the character of the charged carrie...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
We employ the femtosecond pump supercontinuum-probing technique to investigate the photoinduced elec...
We present results of a comparative study of colloidal anatase titanium oxide nanorods and extremely...
Injection of photoexcited electrons in the para-Ethyl Red dye to TiO2 nanoparticles (Anatase, 40 nm ...
Extra charges in semiconductor nanocrystals are of paramount importance for their electrically drive...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Carrier dynamics affects photocatalytic systems, but direct and real-time observations in an element...
TiO2 is one of the most attractive photocatalysts, with applications in water splitting, wastewater ...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
© 2017 American Chemical Society. Understanding the nature of charge carriers in nanoscale titanium ...
Transition metal oxides are widely used as catalysts for industrial processes. Notably, TiO$_{2}$ is...
The relaxation dynamics of charge carriers of organic capped TiO2 nanorods dispersed in chloroform w...
We report on femtosecond–nanosecond (fs–ns) studies of the triphenylamine organic dye (TPC1) interac...
We have studied electron transfer dynamics between TiO2 nanoparticles and molecular adsorbates using...
Understanding the relationship between structural properties and the character of the charged carrie...
The optical bandgap of anatase TiO2 nanoparticles is dominated by bulk absorption bands in the deep-...
We employ the femtosecond pump supercontinuum-probing technique to investigate the photoinduced elec...
We present results of a comparative study of colloidal anatase titanium oxide nanorods and extremely...
Injection of photoexcited electrons in the para-Ethyl Red dye to TiO2 nanoparticles (Anatase, 40 nm ...
Extra charges in semiconductor nanocrystals are of paramount importance for their electrically drive...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
Carrier dynamics affects photocatalytic systems, but direct and real-time observations in an element...
TiO2 is one of the most attractive photocatalysts, with applications in water splitting, wastewater ...
Transition metal oxides are among the most promising solar materials, whose properties rely on the g...
© 2017 American Chemical Society. Understanding the nature of charge carriers in nanoscale titanium ...
Transition metal oxides are widely used as catalysts for industrial processes. Notably, TiO$_{2}$ is...